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DOE OSTI · 2582394

Galaxy Zoo DESI: large-scale bars as a secular mechanism for triggering AGNs

Abstract

ABSTRACT Despite the evidence that supermassive black holes (SMBHs) co-evolve with their host galaxy, and that most of the growth of these SMBHs occurs via merger-free processes, the underlying mechanisms which drive this secular co-evolution are poorly understood. We investigate the role that both strong and weak large-scale galactic bars play in mediating this relationship. Using 48 871 disc galaxies in a volume-limited sample from Galaxy Zoo DESI, we analyse the active galactic nucleus (AGN) fraction in strongly barred, weakly barred, and unbarred galaxies up to $z = 0.1$ over a range of stellar masses and colours. After controlling for stellar mass and colour, we find that the optically selected AGN fraction is $31.6 \pm 0.9$ per cent in strongly barred galaxies, $23.3 \pm 0.8$ per cent in weakly barred galaxies, and $14.2 \pm 0.6$ per cent in unbarred disc galaxies. These are highly statistically robust results, strengthening the tantalizing results in earlier works. Strongly barred galaxies have a higher fraction of AGNs than weakly barred galaxies, which in turn have a higher fraction than unbarred galaxies. Thus, while bars are not required in order to grow an SMBH in a disc galaxy, large-scale galactic bars appear to facilitate AGN fuelling, and the presence of a strong bar makes a disc galaxy more than twice as likely to host an AGN than an unbarred galaxy at all galaxy stellar masses and colours.

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Garland, Izzy (ORCID:0000000238876433), Walmsley, Mike (ORCID:0000000264084181), Silcock, Maddie, Potts, Leah, Smith, Josh, Simmons, Brooke (ORCID:0000000158823323), Lintott, Chris (ORCID:000000015578359X), Smethurst, Rebecca (ORCID:0000000164177196), Dawson, James, Keel, William (ORCID:0000000261319539), Kruk, Sandor (ORCID:0000000180108879), Mantha, Kameswara, Masters, Karen (ORCID:0000000308469578), O’Ryan, David, Popp, Jürgen, Thorne, Matthew. 2024-07-01. Galaxy Zoo DESI: large-scale bars as a secular mechanism for triggering AGNs. https://doi.org/10.1093/mnras/stae1620

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